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关于霍夫迈斯特效应:蛋白质-水界面处的波动与表面张力

On the Hofmeister effect: fluctuations at the protein-water interface and the surface tension.

作者信息

Bogár Ferenc, Bartha Ferenc, Násztor Zoltán, Fábián László, Leitgeb Balázs, Dér András

机构信息

MTA-SZTE Supramolecular and Nanostructured Materials Research Group of Hungarian Academy of Sciences, University of Szeged , H-6720 Szeged, Hungary.

出版信息

J Phys Chem B. 2014 Jul 24;118(29):8496-504. doi: 10.1021/jp502505c. Epub 2014 Jul 10.

Abstract

We performed molecular dynamics simulations on the tryptophane-cage miniprotein using a nonpolarizable force field, in order to model the effect of concentrated water solutions of neutral salts on protein conformation, which is a manifestation of Hofmeister effects. From the equilibrium values and the fluctuations of the solvent accessible surface area of the miniprotein, the salt-induced changes of the mean value of protein-water interfacial tension were determined. At 300 K, the chaotropic ClO4(-) and NO3(-) decreased the interfacial tension according to their position in the Hofmeister series (by approximately 5 and 2.7 mN/m, respectively), while the kosmotropic F(-) increased it (by 1 mN/m). These values were compared to those obtained from the Gibbs equation using the excess surface adsorption calculated from the probability distribution of the water molecules and ions around the miniprotein, and the two sets were found to be very close to each other. Our results present a direct evidence for the central role of interfacial tension and fluctuations at the protein-water interface in Hofmeister phenomena, and provide a computational method for the determination of the protein-water interfacial tension, establishing a link between the phenomenological and microscopic description of protein-water interfaces.

摘要

我们使用非极化力场对色氨酸笼状小蛋白进行了分子动力学模拟,以模拟中性盐的浓水溶液对蛋白质构象的影响,这是霍夫迈斯特效应的一种表现。从小蛋白的溶剂可及表面积的平衡值和波动情况,确定了盐诱导的蛋白质-水界面张力平均值的变化。在300 K时,离液序列高的ClO4(-)和NO3(-)根据它们在霍夫迈斯特序列中的位置降低了界面张力(分别约为5和2.7 mN/m),而促溶剂F(-)则使其增加(1 mN/m)。将这些值与使用从小蛋白周围水分子和离子的概率分布计算出的过量表面吸附从吉布斯方程获得的值进行比较,发现这两组值非常接近。我们的结果为界面张力和蛋白质-水界面波动在霍夫迈斯特现象中的核心作用提供了直接证据,并提供了一种计算蛋白质-水界面张力的方法,建立了蛋白质-水界面现象学描述和微观描述之间的联系。

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